Surface roughening method of metal material
A metal material and surface roughening technology, applied in the field of material processing engineering, can solve the problems of high energy consumption, affecting safe production, hidden danger of by-product explosion, etc., and achieve the effects of low technology application cost, elimination of potential hazards, and easy availability of raw materials
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Embodiment 1
[0023] Taking AZ91 magnesium alloy as the research object. Using distilled water as solvent, prepare 20.0g / L sodium chloride solution as anodic polarization electrolyte. Connect the equal-area samples to the wires, then connect them to the two output ports of the sinusoidal AC power supply, and then immerse them in the above-mentioned electrolyte with a temperature control of 25°C, keep the distance between the samples at 3cm, and use a constant current of 1.0mA / cm at 50Hz 2 Treat for 30min. After washing with water and drying, it was found that the surface of the sample was evenly distributed with finely divided pits with the same size and depth visible to the naked eye, which confirmed that the surface of the material was obviously roughened.
Embodiment 2
[0025] Taking AZ91 magnesium alloy as the research object. The preparation of the anodic polarization solution was the same as in Example 1 except that the concentration of sodium chloride was changed to 0.02g / L. Connect the equal-area samples to the wires and connect them to the positive and negative output ports of the DC power supply respectively, and then immerse them in the above-mentioned electrolyte solution with a temperature control of 40°C, keep the distance between the samples at 5cm, and treat at a constant voltage of 2V for 15min. After washing and drying, it was found that the surface of the sample connected to the positive output port of the DC power supply was uniformly distributed with finely divided pits that were basically the same size and depth visible to the naked eye, confirming that the surface of the material was obviously roughened.
Embodiment 3
[0027]Taking AZ91 magnesium alloy as the research object. The preparation of the anodic polarization solution was the same as in Example 1 except that the concentration of sodium chloride was changed to 100g / L. Except that the counter electrode was changed to a stainless steel plate with the same area as the sample, other conditions of anodic polarization were controlled as in Example 1. After washing with water and drying, it was found that the surface of the sample was uniformly distributed with finely divided pits that were basically the same size and depth visible to the naked eye, which confirmed that the surface of the material was obviously roughened.
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